The invention relates to a connecting element for the releasable connection of a first part with a second part, in particular a bowden cable with a lever wherein the connecting element comprises a housing which is rigidly mounted to the first part, an engaging element mounted to the second part and a slide having a receiving element complementary shaped to the engaging element for the releasable connection of the engaging element with the receiving element. The slide can inside the housing slide from a first position into a second position for latching the releasable connection between the engaging element and the receiving element. The connecting element further comprises at least one latching means for fixing the slide in the second position and at least one releasing means for manually acting onto the at least one latching means in order to release the slide from the second position for the unlatching of the releasable connection between the engaging element and the receiving element.
|
7. A connecting element for releasably connecting a first part with a second part, comprising:
a) a housing;
b) an engaging element;
c) a slide with a receiving element complementary shaped to the engaging element for releasable connection of the engaging element with the receiving element, the slide being slidable inside the housing from a first position to a second position for latching together the engaging element and the receiving element;
d) at least one latch for fixing the slide in the second position;
e) at least one release member extending outwardly of the housing for manually acting onto the at least one latch to release the slide from the second position for unlatching the releasable connection between the engaging element and the receiving element in order to separate the engaging element and housing; and
wherein the slide slides along a bushing extending through the housing; and the bushing is covered by a cover on the side opposite to the engaging element and the cover has one or more openings for the at least one release member.
1. A connecting element for releasably connecting a first part with a second part, comprising:
a) a housing which is rigidly attached to the first part;
b) an engaging element attached to the second part;
c) a slide with a receiving element complementary shaped to the engaging element for releasable connection of the engaging element with the receiving element, the slide being slidable inside the housing from a first position to a second position for latching together the engaging element and the receiving element;
d) at least one latch for fixing the slide in the second position;
e) at least one release member extending outwardly of the housing for manually acting onto the at least one latch to release the slide from the second position for unlatching the releasable connection between the engaging element and the receiving element in order to separate the two parts from each other; and
wherein the slide slides along a bushing extending through the housing; and the bushing is covered by a cover on the side opposite to the engaging element and the cover has one or more openings for the at least one release member.
6. A connecting element for releasably connecting a first part with a second part, comprising:
a) a housing;
b) an engaging element;
c) a slide with a receiving element complementary shaped to the engaging element for releasable connection of the engaging element with the receiving element, the slide being slidable inside the housing from a first position to a second position for latching together the engaging element and the receiving element;
d) at least one latch for fixing the slide in the second position; and
e) at least one release member extending outwardly of the housing for manually acting onto the at least one latch to release the slide from the second position for unlatching the releasable connection between the engaging element and the receiving element in order to separate the engaging element and housing;
wherein a damping element for damping the transmission of vibrations is provided inside the housing;
wherein the damping element is arranged between a bushing and the housing; and
wherein the bushing comprises lateral projections or edges coacting for its fixing with recesses of the damping element.
11. A connecting element for releasably connecting a first part with a second part, comprising:
a) a housing;
b) an engaging element;
c) a slide with a receiving element complementary shaped to the engaging element for releasable connection of the engaging element with the receiving element, the slide being slidable inside the housing from a first position to a second position, the engaging element being connected with the receiving element in the first position;
d) at least one latch for fixing the slide in a first recess inside the housing in the first portion and for fixing the slide in an additional recess inside the housing in the second position;
e) at least one release member extending outwardly of the housing for manually acting onto the at least one latch to release the slide from the second position for unlatching the releasable connection between the engaging element and the receiving element in order to separate the engaging element and housing; and
wherein the housing is covered by a cover on the side opposite to the engaging element and the cover has one or more openings for the at least one release member.
5. A connecting element for releasably connecting a first part with a second part, comprising:
a) a housing which is rigidly attached to the first part;
b) an engaging element attached to the second part;
c) a slide with a receiving element complementary shaped to the engaging element for releasable connection of the engaging element with the receiving element, the slide being slidable inside the housing from a first position to a second position for latching together the engaging element and the receiving element;
d) at least one latch for fixing the slide in the second position;
e) at least one release member extending outwardly of the housing for manually acting onto the at least one latch to release the slide from the second position for unlatching the releasable connection between the engaging element and the receiving element in order to separate the two parts from each other;
wherein a damping element for damping the transmission of vibrations between the two parts is provided inside the housing;
wherein the damping element is arranged between a bushing and the housing; and
wherein the bushing comprises lateral projections or edges coacting for its fixing with recesses of the damping element.
2. A connecting element according to
3. A connecting element according to
4. A connecting element according to
8. A connecting element according to
9. A connecting element according to
10. A connecting element according to
12. A connecting element according to
13. A connecting element according to
|
This application is a continuation of U.S. patent application Ser. No. 09/980,537 filed Feb. 26, 2002, now abandoned which is hereby incorporated herein by reference in its entirety.
The present invention relates to a connecting element for the releasable connection of a first part to a second part, in particular a Bowden cable to a lever.
In many fields of mechanical engineering there is the problem to interconnect two parts. An important case is the connection between a lever and a Bowden cable, for example when the movements of a shift lever are to be transmitted via a Bowden cable to the gear box of a vehicle or when a parking brake is to be operated by means of a braking lever via two braking cables. Thus, such a connection is in particular used in the automotive field, but also in construction machines or sport equipment a plurality of connections between separate components of a machine or the device are needed.
Such a device has to meet different requirements. On the one hand it should be reliable and stable so that the parts do not become unintentionally disconnected during their use (operation of a vehicle, movement of a construction machine, etc.) On the other hand, the connection should for cost reasons be designed such that the parts can during assembly easily and without excessive force be manually assembled. Connections with screws or the like are therefore excluded from the beginning.
In the prior art constructions are well-known, where the maximum mechanical loading on the connection exceeds the necessary force during assembly many times. These arrangements consist typically of a sphere-like head attached to the first part which is snapped into a dome shaped receptacle attached to the second part, whereby the sides of the dome shaped receptacle are bent. In order to provide a lasting latching of this connection, the dome shaped receptacle moves on a slide or the like together with the sphere-like head into an opening or recess of the second part whose walls avoid a bending of the sides of the dome shaped receptacle. When the slide is latched at the end of the sliding motion, the simple movement of the sphere-like head in the direction of the dome shaped receptacle not only provided the actual connection between the two parts but also the automatic latching of the connection, which is therefore capable to resist mechanical loading exceeding many times over the force required for assembly.
In many cases, however, the connection also has to be easily releasable. In case of the mentioned examples from the automotive field it is for example during repairs necessary to replace the Bowden cables and to separate them from the shift lever or braking lever. The connections used in the prior art are either (without destruction) not releasable at all or they require complicated special tools in order to release the slide or the like from its latched position so that the dome shaped receptacle can be moved back into its starting position and the sphere-like head can be removed therefrom.
A further disadvantage of connections of the described type is the fact that the stable connection between the sphere-like head and the dome shaped receptacle is directly transmitting vibrations from one part to the other part. This is in many cases a disadvantage, in particular for the above mentioned connection between a shift lever and a Bowden cable, since the vibrations transmitted from the motor on the cable can thus be felt in the shift lever which renders precise shifting movements more difficult.
It is therefore the problem of the present invention to provide a simple and inexpensive connection between two parts which provides on the one hand a high mechanical stability with an easy assembly but which can also easily manually be released.
According to a further aspect of the present invention, the connection is to damp the transmission of vibrations between the two parts.
The invention relates to a connecting element for the releasable connection of a first part to a second part, in particular a cable to a lever, wherein the connecting element comprises a housing rigidly attached to the first part, an engaging element attached to the second part and a slide with a receiving element complementary shaped to the engaging element for the releasable connection of the engaging element with the receiving element, wherein the slide can slide inside the housing from a first position into a second position for latching the releasable connection between the engaging element and the receiving element. The connecting element further comprises at least one latching means for fixing the slide in the second position and at least one releasing means which serves for manually acting onto the at least one latching means to release the slide from the second position for unlatching the releasable connection between the engaging element and the receiving element.
By the at least one releasing means, which is integrally connected with the connecting element, the slide can with a simple movement of the hand be released from its latched position, in order to separate the two parts from each other. Special tools or special technical skills are not necessary. Thus, it is for example in case of the use in the automotive field also for a non-skilled person possible to perform repairs which need a disassembly of the connected parts. However, the high mechanical stability of the connection remains unaffected.
Preferably, two snapping hooks are provided as the at least one latching means. The at least one releasing means is preferably provided as extensions of the two snapping hooks extending over the edge of the housing. In this preferred embodiment of the invention the slide is released from its latched position simply by manually pressing the extensions together. Since the force for pressing attacks at the end of the extensions, an easy release is due to the lever principle also possible in case of a stable latching.
According to a particularly preferred embodiment, the slide slides along a bushing extending through the housing. This bushing allows by a suitable material selection an optimization of the sliding properties of the slide and facilitates thus the assembly of the two parts. Preferably, the bushing is apart from one or more slits for the release means closed by a cover on the side opposite to the receiving element.
A damping element for damping the transmission of vibrations between the two parts is preferably provided inside the housing. Preferably, the damping element is arranged between the bushing and the housing. Thus, the vibrational damping does not affect the stability of the connection between the engaging element and the slide. Preferably, the bushing has lateral projections or edges coacting with recesses of the damping element for its fixing.
Further advantageous developments of the present invention are the subject matter of the depending claims.
In the following detailed description presently preferred embodiments of the present invention are described with reference to the figures, which show:
With reference to
The preferably sphere or egg shaped engaging element 30 snaps under a movement in the direction of the arrow (cf.
The preferred cover 70 protects the connecting mechanism against the accumulation of dirt and against damages. Furthermore, a holding and/or support surface 71 is provided on the upper side of the cover 70 for supporting the complete connecting element 1 when the engaging element 30 is being inserted (cf. the indicated finger in
In the above position the snapping hooks 53 engage preferably the edge of the bushing 60 (cf.
When the slide 50 slides upwards, the sides of the receiving element 51 are automatically compressed by the bushing 60 so that the sphere-like or egg-like engaging element 30 is rigidly fixed within the receiving element 51. As a result, the upward movement of the connector 51 provides a connection between the first part 20 and the second part 50 which is capable to resist high mechanical loading.
As can be seen from
In order to allow an easy manual release of the slide 50 from its latched position even with very stiff snapping hooks 53, the releasing means 55 might be longer than shown in
Further to the above discussed embodiment, where the releasing means 55 are provided as extensions of the snapping hooks 53 it is also possible to separately provide them on the housing 10 and to have them act onto the snapping hooks 53 by a rotational or a sliding movement etc. to release the slide 50 from its latched position.
In the embodiment shown in
Preferably, the damping element 80 is arranged between a lower projecting edge 11 of the housing 10 and the already above mentioned cover 17 at the upper edge of the housing 10. Thus, a direct mechanical contact between the housing 10 and the bushing 60 is effectively avoided. For a fixing of the bushing 60 relative to the damping element 80 it comprises on the upper and the lower side lateral projections or edges 62 engaging corresponding recesses 81 of the damping element 80.
The described connecting element is preferably made of plastic materials or metals. Metals have a greater stability, whereas plastic materials, as for example Polyamide, are less expensive to produce, for example with injection molding. For the damping element 80 preferably typical Elastomers are used. For the selection of the materials for the slide 50 and the bushing 60 or the housing 10, respectively, it should be taken care that good sliding properties are achieved in order to provide an easy connecting of the two parts.
Sanchez, Manuel Martin, Contero, Juan M. Dona
Patent | Priority | Assignee | Title |
10138927, | Dec 12 2013 | Kongsberg Automotive AB | Ball joint connector |
10260552, | Nov 30 2017 | Hyundai Motor Company; Kia Motors Corporation | Transmission cable locking device for vehicles |
10352350, | Nov 28 2013 | ZF Friedrichshafen AG | Cable pull with guide bushing and length compensation, transmission arrangement with a cable pull |
10428862, | Jun 27 2014 | Hi-Lex Corporation | Cable linking device |
10570942, | Dec 23 2013 | BÖLLHOFF VERBINDUNGSTECHNIK GMBH | Annular plug coupling, and production method and connection method therefor |
10753386, | Mar 13 2018 | Ford Global Technologies, LLC | Quick release feature for gas assist struts |
10753387, | Oct 20 2014 | Kongsberg Automotive AB | Ball pin connector |
8684621, | Jun 30 2009 | THK RHYTHM AUTOMOTIVE GmbH | Ball joint |
9021917, | Jun 17 2011 | KONGSBERG DRIVELINE SYSTEMS I, INC. | Motion transmitting remote control assembly having a terminal body with a transverse opening |
9097272, | Jul 06 2010 | Bayerische Motoren Werke Aktiengesellschaft | Fixing arrangement for fixing motor vehicle components |
9291194, | Dec 23 2011 | BROSE FAHRZEUGTEILE GMBH & CO KG, HALLSTADT | Spindle drive for an adjustment element of a motor vehicle |
9441729, | Jan 24 2011 | Kongsberg Automotive AB | Gear change actuator |
Patent | Priority | Assignee | Title |
4581953, | Jun 28 1982 | Technology Holding Company | Molded terminal with vibration dampener pocket |
5220832, | Sep 13 1991 | Technology Holding Company | Oppositely toothed core adjust having integral inner member and control attachment |
5265495, | Sep 21 1992 | Technology Holding Company | Isolated shifter terminal assembly |
5398566, | Apr 26 1990 | Kongsberg Automotive ASA | Manual adjust having oppositely toothed fitting |
5584212, | Aug 08 1994 | Hi-Lex Corporation | Cable end fitting with simplified assembly |
5676485, | Mar 28 1996 | Central Corporation | Ball joint used for steering arrangement or joint of suspension system of automobile |
5682797, | Jul 08 1996 | Technology Holding Company | Adjustment lock with lock fingers |
5685199, | May 02 1996 | Technology Holding Company | Push-pull control with opposing collet adjustment II |
5709132, | Jul 22 1996 | Kongsberg Automotive ASA | Cable length adjustment mechanism |
5749746, | Sep 26 1995 | HON HAI PRECISION IND CO , LTD | Cable connector structure |
5937705, | Apr 08 1998 | Flex Technologies, Inc. | Push-pull control cable assembly with quick-release terminal fittings therefor |
6099339, | Nov 27 1997 | SMK Corporation | Connector plug-locking mechanism |
6109132, | Apr 08 1998 | Flex Technologies, Inc. | Push-pull control cable assembly with quick-release terminal fittings therefor |
DE19813721, | |||
DE19824530, | |||
DE19918911, | |||
DE29804345, | |||
DE4428496, | |||
EP200793, |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Aug 25 2004 | Fico Cables S.A. | (assignment on the face of the patent) | / |
Date | Maintenance Fee Events |
Oct 14 2009 | M1551: Payment of Maintenance Fee, 4th Year, Large Entity. |
Dec 27 2013 | REM: Maintenance Fee Reminder Mailed. |
May 16 2014 | EXP: Patent Expired for Failure to Pay Maintenance Fees. |
Date | Maintenance Schedule |
May 16 2009 | 4 years fee payment window open |
Nov 16 2009 | 6 months grace period start (w surcharge) |
May 16 2010 | patent expiry (for year 4) |
May 16 2012 | 2 years to revive unintentionally abandoned end. (for year 4) |
May 16 2013 | 8 years fee payment window open |
Nov 16 2013 | 6 months grace period start (w surcharge) |
May 16 2014 | patent expiry (for year 8) |
May 16 2016 | 2 years to revive unintentionally abandoned end. (for year 8) |
May 16 2017 | 12 years fee payment window open |
Nov 16 2017 | 6 months grace period start (w surcharge) |
May 16 2018 | patent expiry (for year 12) |
May 16 2020 | 2 years to revive unintentionally abandoned end. (for year 12) |